LAPSE:2023.4153
Published Article

LAPSE:2023.4153
A Four-Winding Inductive Filtering Transformer to Enhance Power Quality in a High-Voltage Distribution Network Supplying Nonlinear Loads
February 22, 2023
Abstract
This paper solves the problem of reactive power and harmonics compensation in a high-voltage (HV) distribution network supplying nonlinear loads. An inductive filtering (IF) approach where passive filters connect to the filtering winding of a four-winding inductive filtering transformer (FW-IFT) is presented to enhance the power quality of the public grid. This method can not only greatly suppress harmonic currents of the medium and/or low-voltage (LV) side, but also prevent them from flowing into the public grid. The new main circuit topology, where the FW-IFT has specific filtering winding by adopting the ampere-turn balance of the transformer, is presented. On the basis of the structure of the FW-IFT, the magnetic potential balanced equation and inductive filtering technology, its equivalent circuit and mathematical model are established, and the filtering performances are analyzed in detail. Simulation and experimental results rated at SN-10/0.38 of the FW-IFT are presented to prove the efficacy of the comprehensive enhancement of power quality on the grid side.
This paper solves the problem of reactive power and harmonics compensation in a high-voltage (HV) distribution network supplying nonlinear loads. An inductive filtering (IF) approach where passive filters connect to the filtering winding of a four-winding inductive filtering transformer (FW-IFT) is presented to enhance the power quality of the public grid. This method can not only greatly suppress harmonic currents of the medium and/or low-voltage (LV) side, but also prevent them from flowing into the public grid. The new main circuit topology, where the FW-IFT has specific filtering winding by adopting the ampere-turn balance of the transformer, is presented. On the basis of the structure of the FW-IFT, the magnetic potential balanced equation and inductive filtering technology, its equivalent circuit and mathematical model are established, and the filtering performances are analyzed in detail. Simulation and experimental results rated at SN-10/0.38 of the FW-IFT are presented to prove the efficacy of the comprehensive enhancement of power quality on the grid side.
Record ID
Keywords
Four-winding inductive filtering transformer (FW-IFT), inductive filtering (IF), nonlinear loads, passive filter, power quality
Subject
Suggested Citation
Chen Y, Huang Z, Duan Z, Fu P, Zhou G, Luo L. A Four-Winding Inductive Filtering Transformer to Enhance Power Quality in a High-Voltage Distribution Network Supplying Nonlinear Loads. (2023). LAPSE:2023.4153
Author Affiliations
Chen Y: State Grid Hunan Electric Power Company, Changsha 410012, China
Huang Z: The College of Electrical and Information Engineering, Hunan University, Changsha 410082, China
Duan Z: State Grid Hunan Electric Power Company, Changsha 410012, China
Fu P: State Grid Hunan Electric Power Company, Changsha 410012, China
Zhou G: State Grid Hunan Electric Power Company, Changsha 410012, China
Luo L: The College of Electrical and Information Engineering, Hunan University, Changsha 410082, China
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Huang Z: The College of Electrical and Information Engineering, Hunan University, Changsha 410082, China
Duan Z: State Grid Hunan Electric Power Company, Changsha 410012, China
Fu P: State Grid Hunan Electric Power Company, Changsha 410012, China
Zhou G: State Grid Hunan Electric Power Company, Changsha 410012, China
Luo L: The College of Electrical and Information Engineering, Hunan University, Changsha 410082, China
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Journal Name
Energies
Volume
12
Issue
10
Article Number
E2021
Year
2019
Publication Date
2019-05-27
ISSN
1996-1073
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PII: en12102021, Publication Type: Journal Article
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LAPSE:2023.4153
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https://doi.org/10.3390/en12102021
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Feb 22, 2023
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